Acta Chir Orthop Traumatol Cech. 2014; 81(6):371-379 | DOI: 10.55095/achot2014/051

Most Frequent Causes of Autologous Graft Failure in Anterior Cruciate Ligament ReplacementOriginal papers

P. Vališ*, J. Sklenský, M. Repko, M. Rouchal, J. Novák, T. Otaševič
Ortopedická klinika Fakultní nemocnice Brno

PURPOSE OF THE STUDY:
The aim of this retrospective study was to present a comprehensive overview of the causes of bone-tendon-bone (BTB) autograft failure after primary anterior cruciate ligament (ACL) reconstruction.

MATERIAL AND METHODS:
Between 2003 and 2013, we performed revision ACL replacement in 47 patients who had undergone primary BTB autograft ACL reconstruction in other hospitals. The group consisted of 16 women (aged 25 to 48 years) and 31 men (25 to 46 years). Surgery was performed on the right knee in 26 and on the left knee in 21 patients. In each of the 47 patients, two different assessments were made:
1. Analysis of causes of failure based on surgical protocols and/or intra-operative video records taken during most of the procedures.
2. Evaluation of bone tunnel location on lateral knee radiograms, using the method described by Harner for femoral tunnels and that reported by Stäubli and Rauschning for tibial tunnels.

RESULTS:
The most frequent cause of knee instability, occurring in 51.1% of the patients, was new trauma to the knee. Non-traumatic instability in the remaining 48.9% was due to insufficiency of the graft, and resulted from an incorrect surgical technique (42.5%) or biological causes (6.4%).
The most common surgical mistake found was incorrect bone tunnel placement in the tibia or femur, with a malpositioned femoral tunnel being most frequent. This was diagnosed in 32 patients (68.1% of all patients) and, in 17, was the main or major cause of BTB graft failure.

DISCUSSION:
Based on relevant literature data and our experience, principles for prevention of graft failure after ACL reconstruction can be summarised as follows:
1. harvest of a sufficiently strong BTB autograft
2. accurate anatomical bone tunnel placement
3. appropriate tension of the BTB autograft
4. preventing graft impingement
5. secure graft fixation
6. early functional rehabilitation with an accent on delaying full weight-bearing on the knee (6 to 9 months post-operatively)
CONCLUSIONS
New trauma to the knee is the most frequent cause of BTB autograft failure after ACL reconstruction. This can be avoided by participating in a professionally guided rehabilitation programme and not returning to sports activities earlier than 9 months after ACL reconstruction.
The most common technical error in ACL reconstruction is non-anatomical tunnel placement in the tibia and femur. Femoral tunnel malposition is most frequent while incorrect tibial tunnel placement, which does not influence graft failure so much, is less common.

Keywords: anterior cruciate ligament, bone-tendon-bone graft, cause of failure, primary reconstruction, graft insufficiency, bone tunnel malposition

Published: December 1, 2014  Show citation

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Vališ P, Sklenský J, Repko M, Rouchal M, Novák J, Otaševič T. Most Frequent Causes of Autologous Graft Failure in Anterior Cruciate Ligament Replacement. Acta Chir Orthop Traumatol Cech.. 2014;81(6):371-379. doi: 10.55095/achot2014/051. PubMed PMID: 25651291.
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References

  1. AGLIETTI, P., BUZZI, R., GIRON, F., SIMEONE, A. J., ZACCHEROTTI, G.: Arthroscopic asssisted antherior cruciate ligament reconstruction with central third patellar tendon: A 5-8 year follow-up. Knee Surg. Sports Traumatol. Arthrosc., 5: 138-144, 1997. Go to original source... Go to PubMed...
  2. AGLIETTI, P., ZACCHEROTTI, G., Menchetti, P. P., De Biase, P. A.: Comparison of clinical and radiological parameters with two arthroscopic techniques for anterior cruciate ligament reconstruction. Knee Surg. Sports Traumatol. Arthrosc., 3: 2-8, 1995. Go to original source... Go to PubMed...
  3. Buzzi, R., Zaccherotti, G., Giron, F., Aglietti, P.: The relationship between the intercondylar roof and the tibial plateau with the knee in extension: relevance for tibial tunnel placement in anterior cruciate ligament reconstruction. Arthroscopy, 15: 625-631, 1999. Go to original source... Go to PubMed...
  4. Claes, S., Verdonk, P., Forsyth, R., Bellemans, J., The "ligamentization" process in anterior cruciate ligament reconstruction: what happens to the human graft? A systematic review of the literature. Am. J. Sports Med., 39: 2476-2483, 2011. Go to original source... Go to PubMed...
  5. ČECH, O., SOSNA, A., BARTONÍČEK, J.: Poranění vazivového aparátu kolenního kloubu. Praha, Avicenum 1986.
  6. DambrOs, J. M, Florencio, R., Lopes. O. V. Jr., Kuhn, A, Saggin, J., Spinelli, L. F.: Radiological analysis of bone tunnel position in anterior cruciate ligament reconstruction surgery: Comparison between the open technique and arthroscopy via an anteromedial portal. Rev. Bras. Orthop., 46: 270-275, 2011. Go to original source... Go to PubMed...
  7. van Eck, C. F., Schkrohowsky, J. G., Working, Z. M., Irrgang, J. J., Fu, F. H.: Prospective analysis of failure rate and predictors of failure after anatomic anterior cruciate ligament reconstruction with allograft. Am. J. Sports Med., 40: 800-807, 2012. Go to original source... Go to PubMed...
  8. HANDL, M., SMETANA, P., MAŠÁT, P.: Vliv implantace a tonizace BTB štěpu na ROM kolenního kloubu. V. národní ortopedický kongres, kniha abstrakt, Praha, Galén 2001, 144-144.
  9. Harner, C. D., Marks, P. H., Fu, F. H., Irrgang, J. J., Silby, M. B., Mengato, R.: Anterior cruciate ligament reconstruction: Endoscopic versus two-incision technique. Arthroscopy, 10: 502-512, 1994. Go to original source... Go to PubMed...
  10. HART, R., KREJZLA, J., ŠVÁB, P.: Přesnost cílení kostních kanálů při plastice předního zkříženého vazu - přínos počítačové navigace. Acta Chir. orthop. Traum. čech., 74: 11-16, 2007. Go to original source...
  11. Howell, S. M., Clark, J. A.: Tibial tunnel placement in anterior cruciate ligament reconstructionsand graft impingement. Clin. Orthop. Relat. Res., 283: 187-95, 1992. Go to original source...
  12. Chen, J. L., Allen, C. R., Stephens, T. E., Haas, A. K., H uston, L. J., Wright, R. W., Feeley, B. T.: Differences in mechanisms of failure, intraoperative findings, and surgical characteristics between single- and multiple-revision ACL reconstructions: A MARS cohort study. Am. J. Sports Med., 41: 1571-1578, 2013.
  13. Jackson, D. W., Grood, E. S., Goldstein, J. D.: A comparison of patellar tendon autograft and allograft used for anterior cruciate ligament reconstruction in the goat model. Am. J. Sports Med., 21: 176-185, 1993. Go to original source... Go to PubMed...
  14. KOH, J.: Computer-assisted navigation and anterior cruciate ligament reconstruction: Accuracy and outcomes. Orthopedics, 28(10 Suppl.): 1283-1287, 2005. Go to original source... Go to PubMed...
  15. MAŠÁT, P., TRČ, T., DYLEVSKÝ, I., HAVLAS, V.: Výsledky operací náhrad předního zkříženého vazu kolenního kloubu. Biomedicína, 7: 1-200, 2005. Go to original source...
  16. MAŠÁT, P., TRČ, T., DYLEVSKÝ, I., HAVLAS, V.: Zhodnocení dlouhodobých výsledků operací náhrad LCA kolenního kloubu klinicky a pomocí rollimetru. Acta Chir. orthop. Traum. čech., 72: 32-37, 2005.
  17. Muramatsu, K., Hachiya, Y., Izawa, H.: Serial evaluation of human anterior cruciate ligament grafts by contrast-enhanced magnetic resonance imaging: Comparison of allografts and autografts. Arthroscopy, 24: 1038-1044, 2008. Go to original source... Go to PubMed...
  18. MUSIL, D., SADOVSKÝ, P., STEHLlK, J.: Reoperace předního zkříženého vazu kadaverózním B-T-B štěpem. Acta Chir. orthop. Traum. čech., 72: 297-303, 2005.
  19. Ntoulia, A., Papadopoulou, F., Ristanis, S., Argyropoulou, M. Georgoulis, A. D.: Revascularization process of the bone-patellar tendon-bone autograft evaluated by contrast-enhanced magnetic resonance imaging 6 and 12 months after anterior cruciate ligament reconstruction. Am. J. Sports Med., 39: 1478-86, 2011. Go to original source... Go to PubMed...
  20. Pinczewski, L. A., Salmon, L. J., Jackson, W. F., von Bormann, R. B., Haslam, P. G., Tashiro, S.: Radiological landmarks for placement of the tunnels in single-bundle reconstruction of the anterior cruciate ligament. J. Bone Jt Surg., 90-B: 172-179, 2008. Go to original source... Go to PubMed...
  21. Plaweski, S., Tchouda, S. D., Dumas, J., Rossi, J., Morea U., Gaudry, A., Cinquin, P., Bosson, J. L., Merloz, P.: Computer Assisted Orthopaedic Surgery-France. Evaluation of a computer-assisted navigation system for anterior cruciate ligament reconstruction: Prospective non-randomized cohort study versus conventional surgery. Orthop. Traumatol. Surg. Res., 98(6 Suppl.): S91-97, 2012. Go to original source... Go to PubMed...
  22. PODŠKUBKA, A., ADAMČO, I., STAŠA, M.: Artroskopická náhrada předního zkříženého vazu volným štěpem z ligamentum patellae transtibiální technikou. Acta Chir. orthop. Traum. čech. 63: 284-293, 1996.
  23. SADOVSKÝ, P., MUSIL, L., FILIP, L., VODIČKA, Z., STEHLÍK, J.: Rekonstrukce předního zkříženého vazu: srovnání metod BTB a šlachami hamstringů. Část 1: Rekonstrukce předního zkříženého vazu BTB technikou - hodnocení našeho souboru. Acta Chir. orthop. Traum. čech. 72: 235-38, 2005.
  24. Scheffel, P. T., Henninger, H. B., Burks, R. T.: Relationship of the intercondylar roof and the tibial footprint of the ACL: implications for ACL reconstruction. Am. J. Sports Med., 41: 396-401, 2013. Go to original source... Go to PubMed...
  25. Sommer, C., Friederich, N. F., Müller, W.: Improperly placed anterior cruciate ligament grafts: correlation between radiological parameters and clinical results. Knee Surg. Sports Traumatol. Arthrosc., 8: 207-213, 2000. Go to original source... Go to PubMed...
  26. Stäubli, H. U., Rauschning, W.: Tibial attachment area of the anterior cruciate ligament in the extended knee position. Anatomy and cryosections in vitro complemented by magnetic resonance arthrography in vivo. Knee Surg. Sports Traumatol. Arthrosc., 2: 138-146, 1994. Go to original source... Go to PubMed...
  27. VELÉ, F.: Kineziologie. Praha, Triton 2006.
  28. Watanabe, B. M., Howell, S. M.: Arthroscopic findings associated with roof impingement of an anterior cruciate ligament graft. Am. J. Sports Med., 23: 616-625, 1995. Go to original source... Go to PubMed...